Cargando…
Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes
It has been postulated that folic acid (folate) deficiency (FD) may be a risk factor for the pathogenesis of a variety of oxidative stress-triggered chronic degenerative diseases including diabetes, however, the direct evidence to lend support to this hypothesis is scanty. For this reason, we set ou...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3817167/ https://www.ncbi.nlm.nih.gov/pubmed/24223745 http://dx.doi.org/10.1371/journal.pone.0077931 |
_version_ | 1782478029198458880 |
---|---|
author | Hsu, Hung-Chih Chiou, Jeng-Fong Wang, Yu-Huei Chen, Chia-Hui Mau, Shin-Yi Ho, Chun-Te Chang, Pey-Jium Liu, Tsan-Zon Chen, Ching-Hsein |
author_facet | Hsu, Hung-Chih Chiou, Jeng-Fong Wang, Yu-Huei Chen, Chia-Hui Mau, Shin-Yi Ho, Chun-Te Chang, Pey-Jium Liu, Tsan-Zon Chen, Ching-Hsein |
author_sort | Hsu, Hung-Chih |
collection | PubMed |
description | It has been postulated that folic acid (folate) deficiency (FD) may be a risk factor for the pathogenesis of a variety of oxidative stress-triggered chronic degenerative diseases including diabetes, however, the direct evidence to lend support to this hypothesis is scanty. For this reason, we set out to study if FD can trigger the apoptotic events in an insulin-producing pancreatic RINm5F islet β cells. When these cells were cultivated under FD condition, a time-dependent growth impediment was observed and the demise of these cells was demonstrated to be apoptotic in nature proceeding through a mitochondria-dependent pathway. In addition to evoke oxidative stress, FD condition could also trigger nitrosative stress through a NF-κB-dependent iNOS-mediated overproduction of nitric oxide (NO). The latter compound could then trigger depletion of endoplasmic reticulum (ER) calcium (Ca(2+)) store leading to cytosolic Ca(2+) overload and caused ER stress as evidence by the activation of CHOP expression. Furthermore, FD-induced apoptosis of RINm5F cells was found to be correlated with a time-dependent depletion of intracellular gluthathione (GSH) and a severe down-regulation of Bcl-2 expression. Along the same vein, we also demonstrated that FD could severely impede RINm5F cells to synthesize insulin and their abilities to secret insulin in response to glucose stimulation were appreciably hampered. Even more importantly, we found that folate replenishment could not restore the ability of RINm5F cells to resynthesize insulin. Taken together, our data provide strong evidence to support the hypothesis that FD is a legitimate risk factor for the pathogenesis of diabetes. |
format | Online Article Text |
id | pubmed-3817167 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-38171672013-11-09 Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes Hsu, Hung-Chih Chiou, Jeng-Fong Wang, Yu-Huei Chen, Chia-Hui Mau, Shin-Yi Ho, Chun-Te Chang, Pey-Jium Liu, Tsan-Zon Chen, Ching-Hsein PLoS One Research Article It has been postulated that folic acid (folate) deficiency (FD) may be a risk factor for the pathogenesis of a variety of oxidative stress-triggered chronic degenerative diseases including diabetes, however, the direct evidence to lend support to this hypothesis is scanty. For this reason, we set out to study if FD can trigger the apoptotic events in an insulin-producing pancreatic RINm5F islet β cells. When these cells were cultivated under FD condition, a time-dependent growth impediment was observed and the demise of these cells was demonstrated to be apoptotic in nature proceeding through a mitochondria-dependent pathway. In addition to evoke oxidative stress, FD condition could also trigger nitrosative stress through a NF-κB-dependent iNOS-mediated overproduction of nitric oxide (NO). The latter compound could then trigger depletion of endoplasmic reticulum (ER) calcium (Ca(2+)) store leading to cytosolic Ca(2+) overload and caused ER stress as evidence by the activation of CHOP expression. Furthermore, FD-induced apoptosis of RINm5F cells was found to be correlated with a time-dependent depletion of intracellular gluthathione (GSH) and a severe down-regulation of Bcl-2 expression. Along the same vein, we also demonstrated that FD could severely impede RINm5F cells to synthesize insulin and their abilities to secret insulin in response to glucose stimulation were appreciably hampered. Even more importantly, we found that folate replenishment could not restore the ability of RINm5F cells to resynthesize insulin. Taken together, our data provide strong evidence to support the hypothesis that FD is a legitimate risk factor for the pathogenesis of diabetes. Public Library of Science 2013-11-04 /pmc/articles/PMC3817167/ /pubmed/24223745 http://dx.doi.org/10.1371/journal.pone.0077931 Text en © 2013 Hsu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Hsu, Hung-Chih Chiou, Jeng-Fong Wang, Yu-Huei Chen, Chia-Hui Mau, Shin-Yi Ho, Chun-Te Chang, Pey-Jium Liu, Tsan-Zon Chen, Ching-Hsein Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title | Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title_full | Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title_fullStr | Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title_full_unstemmed | Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title_short | Folate Deficiency Triggers an Oxidative-Nitrosative Stress-Mediated Apoptotic Cell Death and Impedes Insulin Biosynthesis in RINm5F Pancreatic Islet β–Cells: Relevant to the Pathogenesis of Diabetes |
title_sort | folate deficiency triggers an oxidative-nitrosative stress-mediated apoptotic cell death and impedes insulin biosynthesis in rinm5f pancreatic islet β–cells: relevant to the pathogenesis of diabetes |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3817167/ https://www.ncbi.nlm.nih.gov/pubmed/24223745 http://dx.doi.org/10.1371/journal.pone.0077931 |
work_keys_str_mv | AT hsuhungchih folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT chioujengfong folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT wangyuhuei folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT chenchiahui folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT maushinyi folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT hochunte folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT changpeyjium folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT liutsanzon folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes AT chenchinghsein folatedeficiencytriggersanoxidativenitrosativestressmediatedapoptoticcelldeathandimpedesinsulinbiosynthesisinrinm5fpancreaticisletbcellsrelevanttothepathogenesisofdiabetes |